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The composite blocks can be made from low-cost and locally sourced materials, including the excavated soil at the construction site, but can also utilize waste materials such as mine tailings, coal combustion residuals (coal ash), and fiberglass from decommissioned wind turbine blades. barrel per ton of feedstock.
LanzaTech, a producer of low-carbon fuels and chemicals from waste gases, was awarded a $4-million grant by the Advanced Research Projects Agency-Energy (ARPA-E) as one of the 15 REMOTE projects ( earlier post ) receiving a combined $34 million to find advanced biocatalyst technologies that can convert natural gas to liquid fuel for transportation.
The US Department of Energy’s (DOE) Office of Fossil Energy (FE) has selected four projects for cost-shared research and development under the funding opportunity announcement (FOA), DE-FOA-0002180, Design Development and System Integration Design Studies for Coal FIRST Concepts.
The plants being contemplated are expected to have an attractive environmental footprint as they would process these waste streams with a low emissions profile. SES provides technology, equipment and engineering services for the conversion of low rank, lowcostcoal and biomass feedstocks into energy and chemical products.
Researchers at the University of California, Riverside’s Center for Environmental Research and Technology (CERT) at the Bourns College of Engineering have received two grants to further explore a steam hydrogasification process they developed to convert waste into fuels. diesel, gasoline, jet) at lowcost. Earlier post.).
Waste Management and Genomatica, an industrial biotech company targeting sustainable chemicals ( earlier post ), have formed a strategic joint development agreement to research and advance Genomatica’s technology and manufacturing processes to enable production of intermediate and basic chemicals from syngas made from municipal solid waste.
They considered biomass, wind, solar, and municipal waste resources within the Eastern Interconnection eligible to meet RESs. For the study, they define EVs as including both battery-electric (BEV) and plug-in hybrid electric (PHEV) vehicles. They assumed a gasoline price of $4/gallon (2009 $).
The money will help projects further develop their greenhouse gas removal technologies, which include a machine that can pull carbon dioxide out of the air, a plant to convert household waste into hydrogen for use in the transport industry, and a system to remove carbon dioxide from seawater. Lapwing Energy Limited, “Reverse Coal”.
ARPA-E selected the following 12 teams from universities, national laboratories and the private sector to address and remove key technology barriers to EV adoption by developing next-generation battery technologies: 24M Technologies will develop low-cost and fast-charging sodium metal batteries with good low-temperature performance for EVs.
Transphorm says its Total GaN solution reduces power waste by 90%, and simplifies the design and manufacturing of a wide variety of electrical systems and devices, including motor drives, power supplies and inverters for solar panels and electric vehicles. GaN (gallium nitride) power electronics provider Transphorm Inc.
Most of the methods currently under development involve converting biomass or waste, while there are also approaches to directly produce liquid transportation fuels from sunlight and carbon dioxide, typically using photosynthesis. Coal-fired power plants currently generate approximately 50% of the electricity in the United States.
The legislation directs the Department of Energy to conduct five “Mini-Manhattan Projects” to study carbon capture technologies, non-ethanol biofuels, electric vehicles and electricity storage, cost-competitive solar power, and Generation IV reactors and technologies that will ultimately reduce nuclear waste.
West Virginia University (WVU) researchers are opening a new facility to capture rare earth elements (REEs) from acid mine drainage (AMD) from coal mining. Conventional rare-earth recovery methods require an expensive, difficult and messy extraction process that generates large volumes of contaminated waste. —Paul Ziemkiewicz.
The team anticipates at least a twofold productivity improvement over current levels and a cost that can be competitive with gasoline. The project also includes a proprietary process to convert waste biomass into carbon dioxide and hydrogen to feed the bioreactor, allowing butanol production from waste feedstocks.
The Maverick Oasis factory-built Gas-to-Liquids (GTL) methanol plants are modular, and can be rapidly deployed onsite to produce thousands of gallons per day of methanol from natural gas or methane-rich waste gas. The plants are designed to be low-cost, highly efficient facilities optimized to generate an attractive project rate of return.
Waste Heat Capture (2 projects). Eagle Picher, in partnership with the Pacific Northwest National Laboratory, will develop a new generation of high energy, lowcost planar liquid sodium beta batteries for grid scale electrical power storage applications. LowCost, High Energy and Power Density, Nanotube-Enhanced Ultracapacitors.
Borla will combine this with its diesel exhaust technology to create a low-cost, novel system that doubles as a device to extract potable water from diesel and other internal combustion exhaust. For the recovery of previously wasted energy from relatively low temperature (.
million in federal funding for cost-shared projects that will develop technologies that utilize CO 2 from coal-fired power plants to produce useful products. Mineralization concepts utilizing CO 2 with industrial wastes. Mineralization concepts utilizing CO 2 with industrial wastes. coal, metals, etc.),
Included in the 34 FY2010 SBIR Phase I awards are the following biofuel and emissions-reduction projects: Technology Specialists, “Thermochemical Biofuels Production from Biomass Waste Materials”, $70,000. This project will develop and evaluate a new process for converting biomass waste into diesel fuel.
Waste Heat Capture (2). In this topic, ARPA-E seeks to develop a new generation of ultra-high energy density, low-cost battery technologies for long electric range plug in hybrid electric vehicles and electric vehicles (EVs). Conventional Energy (0). Energy Storage (29). Grid (non-storage) (0). Industrial Efficiency (2).
million of non-Federal cost sharing. Coal supplies nearly 50% of domestic electricity. In order for low-cost electricity from coal-fired power plants to remain available, the DOE said, economical methods for capturing and storing the greenhouse gas emissions from these plants must be developed.
Specifically, lowcost and energy-efficient processes are sought that can be demonstrated and validated under field conditions to meet needs of the nascent algal biomass industry. Algae cultures tend to be relatively dilute, and the energy requirement to remove water from the cultures can be a significant portion of the energy balance.
coal, biomass, or waste—is heated in the absence of molecular oxygen to produce a solid containing char and ash and volatile gases. lower cost) and gasification/F-T processes (e.g., Some of the feedstocks that Altex plans to use include alfalfa, corn stover, switchgrass, and processed woodchips. —US 9199889.
When coupled with carbon capture and storage capabilities, low-cost hydrogen sourced from fossil energy feedstocks and processes will significantly reduce the carbon footprint of these processes and enable progress toward hydrogen production with net-zero carbon emissions, the DOE said.
Unlike carbon capture and storage technologies that remove carbon dioxide emissions directly from large point sources such as coal power plants, NETs remove carbon dioxide directly from the atmosphere or enhance natural carbon sinks. However, it is currently limited by high cost.
Under this cost-shared research and development (R&D), DOE is awarding $51 million to nine new projects for coal and natural gas power and industrial sources. In prior work with DOE, MTR has advanced membrane CO 2 capture technology for coal power plants through small engineering scale testing and studies. ION Clean Energy Inc.
Some continue to burn coal, for example, because there are no other economically feasible choices for them. “We Efficient coal-burning plants Shutting down coal power plants completely is unlikely to happen anytime soon, he predicted, especially since many countries are building new ones that have 40-year life spans.
For B2U, NREL’s repurposing cost calculator is available for free to download , enabling users to explore the effects of different repurposing strategies and assumptions on economics. Repurposing processed batteries should be demonstrated to confirm that a product of adequate reliability can be provided at lowcost.
With Octopus Go we receive lowcost power between 00:30 and 04:30 every day. The goal of our Solar project was to charge the car and fill the battery storage at the lowcost and power the house on batteries until the solar was generating enough to power the house and then replenish the battery power with excess solar energy.
Cap-and-trade was first tried on a significant scale twenty years ago under the first Bush administration as a way to address the problem of airborne sulfur dioxide pollution–widely known as acid rain–from coal-burning power plants in the eastern United States. Reduced Output.
The combination of harvesting whole forests and burning long-sequestered carbon sources such as coal or oil has impaired the Earth’s carbon cycle at an increasing pace. To ignore this potential is wasteful and foolish. It is wasteful and destructive to be burning this versatile molecule; we must stop.
Low-cost, low-mass, and space-hardy versions of these technologies would be required, but engineers trying to draw up detailed plans for such satellites today find no parts that meet the tough requirements. It would take two or three of these giant satellites to replace one large retiring coal or nuclear power station.
As another panelist pointed out, “ The New York Times is well-equipped to write the article about how Stimulus Funds have been wasted ”. It is not how can we get lowcost capital to take more risk. It is how do we lower the risk so lowcost capital can participate.
To deal with this major special waste problem has to my knowledge never ever been brought to the attention of the readers of any paper around the world. Batteries are highly special toxic waste and cannot be dropped on the average dump site, so who is going to pay to get rid of this problem? — Kaare Nilsen 2. In the U.S.
BYD makes about 80% of Motorolas RAZR handsets, as well as batteries for iPods and iPhones and low-cost computers, including the model distributed by Nicholas Negropontes One Laptop per Child nonprofit based in Cambridge, Mass. operations are small - about 20 people work in a sales and marketing outpost in Elk Grove Village, Ill.,
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